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61.
Holger Fritze 《Journal of Electroceramics》2006,17(2-4):625-630
Langasite (La3Ga5SiO14, LGS) and gallium orthophosphate (GaPO4) resonators exhibit piezoelectrically exited bulk acoustic waves at temperatures of up to at least 1400∘C and 900∘C, respectively. Their mass sensitivity at elevated temperatures has been found to be about as high as that of quartz at room
temperature. Within its operation temperature range, GaPO4 shows significantly lower losses than LGS.
Factors restricting application relevant properties of LGS at elevated temperatures, such as the mass resolution, include
excessive viscous damping. Therefore, the effective viscosity is determined as a function of the temperature by fitting the
calculated complex impedance to the experimental data in the vicinity of the resonance frequency. The viscosity shows an Arrhenius-like
behavior if a temperature independent contribution is subtracted. The activation energies of the viscosity for LGS and GaPO4 correspond to those of the bulk electrical conductivity for each material. Viscosity and conductivity are obviously correlated.
Therefore, it is highly likely that the predominant conductivity mechanism also controls the mechanical damping. First attempts
to minimize the viscosity of LGS by doping are undertaken. Very light doping does, however, not change the conductivity and
viscosity of LGS. Higher doping levels have to be applied and tested.
Based on the electromechanical properties given for undoped LGS, the applicability of this material as resonant gas sensor
at 600∘C is demonstrated. 相似文献
62.
A. Wisitsoraat A. Tuantranont C. Thanachayanont V. Patthanasettakul P. Singjai 《Journal of Electroceramics》2006,17(1):45-49
Carbon nanotube (CNT) is a useful material for gas-sensing applications because of its high surface to volume ratio structure.
In this work, multi-wall CNTs are incorporated into tin oxide thin film by means of powder mixing and electron beam evaporation
and the enhancement of gas-sensing properties is presented. The CNTs were combined with SnO2powder with varying concentration in the range of 0.25–5% by weight and electron beam evaporated onto glass substrates. From
AFM and TEM characterization, CNT inclusion in SnO2thin film results in the production of circular cone protrusions of CNT clusters or single tube coated with SnO2layer. Experimental results indicate that the sensitivity to ethanol of SnO2thin film increases by the factors of 3 to 7, and the response time and recovery time were reduced by the factors of 2 or
more with CNT inclusion. However, if the CNT concentration is too high, the sensitivity is decreased. Moreover, the CNT doped
film can operate with good sensitivity and stability at a relatively low temperature of 250–300∘C. The improved gas-sensing properties should be attributed to the increasing of surface adsorption area of metal oxide produced
by CNT protrusion. 相似文献
63.
Ki-Won Kim Pyeong-Seok Cho Jong-Heun Lee Seong-Hyeon Hong 《Journal of Electroceramics》2006,17(2-4):895-898
A new method for preparing SnO2 whiskers by the decomposition of SnC2O4 is suggested. A Whisker-like morphology of a SnC2O4 precipitate was attained via the gradual addition of an oxalic acid solution to a hot SnCl2 aqueous solution (T > 50∘C). In comparison, when the solution temperature was either lower than 50∘C or when ethanol was used as the solvent, the SnC2O4 precipitate showed an angular and relatively isotropic morphology. The morphology of the SnC2O4 precipitate remained even after its thermal decomposition into SnO2 at 400∘C indicating that SnC2O4 precipitation is a key step in preparing the whiskers. The formation mechanism of SnO2 whiskers was explained by the supersaturation during the precipitation of SnC2O4. 相似文献
64.
本文介绍了彩色像片洗印机温度控制系统的组成及原理,给出了利用DS1820温度传感器实现温度检测与控制软件的设计实例。 相似文献
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69.
室内移动机器人超声传感器导航网络分布研究 总被引:1,自引:0,他引:1
对于室内广域移动机器人,超声波传感器网络是能够保证给定导航准确度的一种有效方法。合理的超声波传感器网络分布是实现超声波网络导航的重要条件。论述了超声波网络合理分布的原则,据此提出并分析了获得合理超声波传感器网络分布的四个步骤,仿真试验结果验证了它的有效性。 相似文献
70.
A single chip, multi-channel surface plasmon resonance (SPR) imaging system has been developed. The equipment has no moving parts and uses a single sensor chip on which multiple channels can be incorporated. A light emitting diode is used as a photon source while a CCD camera forms the detector. The optical configuration has been designed to achieve a uniform illumination of the sample over a fixed area with a range of incident angles. A calibration test using sucrose solutions shows that the sensitivity of the equipment is 4.3×10−4 refractive index units per pixel line-pair. The use of the system for simultaneous interrogation of different polyelectrolyte thin films, formed by the electrostatic layer-by-layer deposition method, is demonstrated. A reversible pH-dependent response for these organic layers is also reported. 相似文献